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Self-referenced terahertz refractive index sensor based on a cavity resonance and Tamm plasmonic modes

机译:基于腔共振和Tamm等离子体模式的自我引用的太赫兹折射率传感器

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摘要

A self-referenced terahertz (THz) refractive index sensor is proposed. The structure consists of two opposite-facing, graphene-covered distributed Bragg reflectors (DBRs), with a cavity formed in between. The cavity is filled with the ambient medium, and its resonance frequency is sensitive to the changes of the ambient refractive index. On the other hand, Tamm-plasmonic modes, which are excited at the DBR-graphene boundaries, are insensitive to the ambient refractive index and thus provide a frequency reference. The proposed structure is studied using a semi-analytical transfer matrix method (TMM). The sensor, studied for gas sensing, achieves a sensitivity of 0.982 THz per refractive index unit (THz/RIU), and a figure of merit (FoM) of 142 RIU-1 at the cavity resonance frequency of 1.1 THz. The effects of different parameters on the sensor's performance are also investigated. Compared to the previous high-performance THz refractive index sensing approaches, the proposed structure is simpler because it requires no phase- or polarization-matching devices, such as polarizers, prisms, and gratings. Moreover, it provides a self-referenced operation, which was rarely achievable using previous methods. (C) 2020 Optical Society of America
机译:提出了一种自我参考的太赫兹(THz)折射率传感器。该结构包括两个相对的石墨烯覆盖的分布式布拉格反射器(DBRS),其中腔体形成。腔填充有环境介质,并且其共振频率对环境折射率的变化敏感。另一方面,在DBR-石墨烯边界处激发的TAMM - 等离子体模式对环境折射率不敏感,从而提供频率参考。使用半分析转移矩阵法(TMM)研究所提出的结构。研究气体感测的传感器,实现每折射率单元(THZ / RIU)0.982 THz的灵敏度,以及142 Riu-1的优选值(FOM),在1.1至THz。还研究了不同参数对传感器性能的影响。与先前的高性能THz折射率传感方法相比,所提出的结构更简单,因为它不需要匹配或极化匹配的装置,例如偏振器,棱镜和光栅。此外,它提供了一种自引用的操作,很少使用以前的方法可以实现。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共10页
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